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极端温度条件下碳纳米管复合薄膜的电学性质

Electrical Properties of the Carbon-Nanotube Composites Film Under Extreme Temperature Condition.

作者信息

Ha Ji-Hwan, Chu Kunmo, Park Sung-Hoon

机构信息

Department of Mechanical Engineering, Soongsil University, 369 Sangdo-ro, Donjak-gu, Seoul, 156-743, Korea.

Platform Technology Laboratory, Samsung Advanced Institute of Technology, Samsung Electronics, Suwon 443-803, Korea.

出版信息

J Nanosci Nanotechnol. 2019 Mar 1;19(3):1682-1685. doi: 10.1166/jnn.2019.16250.

Abstract

Carbon nanotube (CNT) composites have been widely investigated for electric heating applications (such as water heater, de-icing unit, and patternable micro heaters) owing to their rapid heating, flexibility and light-weight properties. For practical use of CNT composite as heating element applications, the change of resistance with varying temperature must be interpreted. In this study, electric heating behavior of CNT/Nylon 6 composite film (10 wt%) and CNT/Polydimethylsiloxane (PDMS) composite film (10 wt%) were evaluated by measuring the change in normalized resistance under extreme temperature from -50 °C to 100 °C. While CNT/PDMS composite film showed 25% normalized resistance change from -50 °C to 100 °C, in the case of CNT/Nylon 6 composite film, only 10% normalized resistance change was shown. The difference of resistance change is attributed to the difference of the polymer's coefficient of thermal expansion (CTE), which is a crucial factor to consider in the design of CNT composites as a heater or heating sensor. CNT/Nylon 6 composite film is appropriate for flexible heating unit and de-icing application, due to the lower degree of resistance change than that of CNT/PDMS composite film. In addition, a thermal cycling test was conducted to determine the thermal stability and repeatability of CNT composites.

摘要

碳纳米管(CNT)复合材料因其快速加热、柔韧性和轻质特性,已被广泛研究用于电加热应用(如热水器、除冰装置和可图案化微加热器)。为了将CNT复合材料实际用作加热元件应用,必须解释电阻随温度变化的情况。在本研究中,通过测量在-50°C至100°C的极端温度下归一化电阻的变化,评估了CNT/尼龙6复合膜(10 wt%)和CNT/聚二甲基硅氧烷(PDMS)复合膜(10 wt%)的电加热行为。虽然CNT/PDMS复合膜在-50°C至100°C之间显示出25%的归一化电阻变化,但在CNT/尼龙6复合膜的情况下,仅显示出10%的归一化电阻变化。电阻变化的差异归因于聚合物热膨胀系数(CTE)的差异,这是在设计CNT复合材料作为加热器或加热传感器时需要考虑的关键因素。由于电阻变化程度低于CNT/PDMS复合膜,CNT/尼龙6复合膜适用于柔性加热单元和除冰应用。此外,还进行了热循环测试以确定CNT复合材料的热稳定性和重复性。

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